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417 results for “IA”
Supplementary material 5 from: Kendig AE, Canavan S, Anderson PJ, Flory SL, Gettys LA, Gordon DR, Iannone III BV, Kunzer JM, Petri T, Pfingsten IA, Lieurance D (2022) Scanning the horizon for invasive plant threats using a data-driven approach. NeoBiota 74: 129-154. https://doi.org/10.3897/neobiota.74.83312
Table S4
Supplementary material 1 from: Kendig AE, Canavan S, Anderson PJ, Flory SL, Gettys LA, Gordon DR, Iannone III BV, Kunzer JM, Petri T, Pfingsten IA, Lieurance D (2022) Scanning the horizon for invasive plant threats using a data-driven approach. NeoBiota 74: 129-154. https://doi.org/10.3897/neobiota.74.83312
Methods S1
Figure 4 from: Hao G, Zhang C, Al-Shehbaz IA, Guo X, Bi H, Wang J, Liu J (2017) Eutrema giganteum (Brassicaceae), a new species from Sichuan, southwest China. PhytoKeys 82: 15-26. https://doi.org/10.3897/phytokeys.82.12329
Figure 4 - The Maximum likelihood tree based on analysis of the combined nrITS and four cpDNA dataset regions dataset. Bootstrap support values are given above branches receiving > 50% bootstrap support.
Figure 3 from: Hao G, Zhang C, Al-Shehbaz IA, Guo X, Bi H, Wang J, Liu J (2017) Eutrema giganteum (Brassicaceae), a new species from Sichuan, southwest China. PhytoKeys 82: 15-26. https://doi.org/10.3897/phytokeys.82.12329
Figure 3 - The strict consensus tree constructed based on nrITS data (A), four cpDNA regions (B) and the combined nrITS and cpDNAs dataset (C). Bootstrap support values are given above branches receiving > 50% bootstrap support A The 100% strict consensus tree of 667 most maximum parsimony trees based on the analysis of nrITS data B The 100% strict consensus tree of 8 trees based on the analysis of 4 cpDNA regions C The 100% strict consensus tree of 225 trees based on analysis of combined nrITS and 4 cpDNA regions.
Figure 1 from: Hao G, Zhang C, Al-Shehbaz IA, Guo X, Bi H, Wang J, Liu J (2017) Eutrema giganteum (Brassicaceae), a new species from Sichuan, southwest China. PhytoKeys 82: 15-26. https://doi.org/10.3897/phytokeys.82.12329
Figure 1 - Eutrema giganteum G.Q. Hao, Al-Shehbaz & J. Quan Liu. sp. nov. A–B Habit C Leaves D Inflorescence E Flowers F Fruit.
Figure 5 from: Hao G, Zhang C, Al-Shehbaz IA, Guo X, Bi H, Wang J, Liu J (2017) Eutrema giganteum (Brassicaceae), a new species from Sichuan, southwest China. PhytoKeys 82: 15-26. https://doi.org/10.3897/phytokeys.82.12329
Figure 5 - Photomicrographs of mitotic chromosomes of Eutrema giganteum. A population from Xiling Snow Mountain B population from Erlang Mountain.
Figure 2 from: Hao G, Zhang C, Al-Shehbaz IA, Guo X, Bi H, Wang J, Liu J (2017) Eutrema giganteum (Brassicaceae), a new species from Sichuan, southwest China. PhytoKeys 82: 15-26. https://doi.org/10.3897/phytokeys.82.12329
Figure 2 - Geographical distribution of Eutrema giganteum (P1–P4)and Eutrema yunnanense (P5, P6). P1 = Population from Xiling Snow Mountain, Sichuan; P2 = Specimens record from Baoxing County, Sichuan; P3 = Population from Erlang Mountain, Sihuan; P4 = Population from Gongga Mountain, Sichuan; P5 = Population from Haba Mountain, Yunnan; P6 = Population from Cangshan Mountain, Yunnan,
Figure 1 from: Valdespino IA (2017) Novel fern- and centipede-like Selaginella (Selaginellaceae) species and a new combination from South America. PhytoKeys 91: 13-38. https://doi.org/10.3897/phytokeys.91.21417
Figure 1 - Selaginella altheae Valdespino. A Habit, upper surface of stem B Close up of section of the upper surface of the stem C Habit, lower surface of stem D Close up of section of the lower surface of the stem. A–D digitized images of holotype, Maguire et al. 60249 (NY).
Figure 9 from: Valdespino IA (2017) Novel fern- and centipede-like Selaginella (Selaginellaceae) species and a new combination from South America. PhytoKeys 91: 13-38. https://doi.org/10.3897/phytokeys.91.21417
Figure 9 - Selaginella squamulosa Valdespino. A Section of upper surface of stem B Close-up of median leaf, upper surface; note, elongate, idioblast-like marginal cells on inner margin and submarginal and marginal stomata (a) along proximal ½ of outer margin and hairs (b) on lamina surface C Close-up of mid-distal portion of median leaf, upper surface (same leaf shown in B); note, elongate, idioblast-like marginal cells on inner margin, papillae on each cell lumen and hairs (b) on lamina surface D Section of lower surface of stem E Close-up of lateral leaf, lower surface F Close-up of section of acroscopic half of lateral leaf; note, papillae on cells lumen and marginal, idioblast-like and papillate cells. A–F taken from paratype, Boom et al. 6011 (NY).
Figure 2 from: Valdespino IA (2017) Novel fern- and centipede-like Selaginella (Selaginellaceae) species and a new combination from South America. PhytoKeys 91: 13-38. https://doi.org/10.3897/phytokeys.91.21417
Figure 2 - Selaginella altheae Valdespino. A Habit B Section of main stem above first branch showing median leaves, upper surface C Section of main stem above first branch showing lateral leaves and axillary leaf, lower surface D Close-up of strobilus. A–D line drawings of holotype, Maguire et al. 60249 (NY). Illustration made by Rubén Lozano.
Figure 11 from: Valdespino IA (2017) Novel fern- and centipede-like Selaginella (Selaginellaceae) species and a new combination from South America. PhytoKeys 91: 13-38. https://doi.org/10.3897/phytokeys.91.21417
Figure 11 - Selaginella philipsonii (Jermy & Rankin) Valdespino. A Section of upper surface of stem showing median and lateral leaves B Close-up of median leaf, upper surfaces; note, inner margin and submarginal portion of outer margin composed of elongate, idioblast-like and papillate cells and stomata (a) along outer margin C Close-up of median leaf distal portion, upper surface; note, apex tipped by long, divergent cilia, cells with papillae and stomata along outer margin D Close-up of median leaf, upper surface; note, marginal stomata (a), submarginal portion of outer margin composed of elongate, idioblast-like and papillate cells and lumen of lamina cells with multiple papillae E Section of lower surface of stem showing lateral leaves, outer halves of median leaves and rhizophore F Close-up of (E) G Close-up of lateral leaf, lower surface (one of the leaf shown in E) H Close-up of lateral leaf, lower surface (same leaf shown in G); note, stomata along midrib, elongate, idioblast-like and papillate cells and long cilia along acroscopic margin. A–H taken from Steyermark & Rabe 96652 (GH).
Figure 10 from: Valdespino IA (2017) Novel fern- and centipede-like Selaginella (Selaginellaceae) species and a new combination from South America. PhytoKeys 91: 13-38. https://doi.org/10.3897/phytokeys.91.21417
Figure 10 - Selaginella squamulosa Valdespino. A Megaspore, proximal face B Close-up of megaspore, proximal face C Megaspore, distal face D Close-up of megaspore, distal face. A–D taken from paratype, Boom et al. 6011 (NY).
Figure 3 from: Valdespino IA (2017) Novel fern- and centipede-like Selaginella (Selaginellaceae) species and a new combination from South America. PhytoKeys 91: 13-38. https://doi.org/10.3897/phytokeys.91.21417
Figure 3 - Selaginella altheae Valdespino. A Section of upper surface of stem branch B Close-up of lateral leaf from stem branch, upper surface C Section of lower surface of stem branch D Close-up of lateral leaf (from branch), lower surface E Close-up of distal portion and apex of lateral leaf, lower surface (same leaf shown in B); note, elongate and papillate idioblasts (a) and stomata along midrib (b) F Close-up of proximal (basal) portion of lateral leaf, lower surface (same leaf shown in B); note, elongate and papillate idioblasts (a) and stomata along midrib (b). A–F taken from holotype, Maguire et al. 60249 (NY).
Figure 5 from: Valdespino IA (2017) Novel fern- and centipede-like Selaginella (Selaginellaceae) species and a new combination from South America. PhytoKeys 91: 13-38. https://doi.org/10.3897/phytokeys.91.21417
Figure 5 - Selaginella altheae Valdespino. A Megaspore, proximal face B Close-up of megaspore, proximal face C Megaspore, distal face D Close-up of megaspore, distal face E Microspore, proximal face F Microspore, distal-equatorial-proximal faces G Close-up of microspore, distal-equatorial faces; note, capitate projections and echinulate microstructure. A–G taken from holotype, Maguire et al. 60249 (NY).
Figure 4 from: Valdespino IA (2017) Novel fern- and centipede-like Selaginella (Selaginellaceae) species and a new combination from South America. PhytoKeys 91: 13-38. https://doi.org/10.3897/phytokeys.91.21417
Figure 4 - Selaginella altheae Valdespino. A Section of upper surface of stem branch showing median and lateral leaves B Close-up of median leaves from stem branch, upper surfaces C Close-up of median leaf from stem branch, lower surface D Close-up of median leaf from stem branch, upper surface E Close-up of distal portion and apex of median leaf, upper surface (same leaf shown in D); note, punctate to shortly elongate and papillate idioblasts (a) and stomata (b) along midrib F Close-up of proximal portion and base of median leaf, lower surface (same leaf shown in D); note, punctate to shortly elongate and papillate idioblasts (a), stomata (b) along midrib and submarginal and marginal portion near outer base and long cilia (c) on outer base. A–F taken from holotype, Maguire et al. 60249 (NY).
Figure 8 from: Valdespino IA (2017) Novel fern- and centipede-like Selaginella (Selaginellaceae) species and a new combination from South America. PhytoKeys 91: 13-38. https://doi.org/10.3897/phytokeys.91.21417
Figure 8 - Selaginella squamulosa Valdespino. A–B Habit C Upper surface of stem showing median leaves D Lower surface of stem showing lateral leaves and axillary leaf E Close-up of distal portion of stem, upper surface. A–E line drawings of paratype, Boom et al. 6011 (NY). Illustration made by Rubén Lozano.
Figure 7 from: Valdespino IA (2017) Novel fern- and centipede-like Selaginella (Selaginellaceae) species and a new combination from South America. PhytoKeys 91: 13-38. https://doi.org/10.3897/phytokeys.91.21417
Figure 7 - Selaginella squamulosa Valdespino. A Habit B Upper surface of stem showing median leaves C Lower surface of stem showing lateral leaves and axillary leaf D Close-up of strobili (apices of branches), upper surface. A–D line drawings of holotype, Steyermark 103872 (NY). Illustration made by Rubén Lozano.
Figure 5 from: Falcón-Brindis A, Ayala R, Jiménez ML, Hinojosa-Díaz IA (2018) A missing piece in the puzzle: the presence of Euglossa viridissima in the Baja California Peninsula (Hymenoptera, Apidae). ZooKeys 726: 15-23. https://doi.org/10.3897/zookeys.726.19876
Figure 5 Localities in which was registered the presence of E. viridissima in the Cape Region. Biogeographic Provinces map from CONABIO (1997).
Figures 1-4 from: Falcón-Brindis A, Ayala R, Jiménez ML, Hinojosa-Díaz IA (2018) A missing piece in the puzzle: the presence of Euglossa viridissima in the Baja California Peninsula (Hymenoptera, Apidae). ZooKeys 726: 15-23. https://doi.org/10.3897/zookeys.726.19876
Figures 1-4 Male details of E. viridissima found in Baja California Sur State. 1 Habitus (lateral view) 2 Facial aspect 3 Ventral view of metasoma 4 Mesotibia.
Figures 1-3 from: Engel MS, Alqarni AS, Shebl MA, Iqbal J, Hinojosa-Díaz IA (2017) A new species of the carpenter bee genus Xylocopa from the Sarawat Mountains in southwestern Saudi Arabia (Hymenoptera, Apidae). ZooKeys 716: 29-41. https://doi.org/10.3897/zookeys.716.21150
Figures 1-3 - Male of Xylocopa (Koptortosoma) sarawatica Engel, sp. n., from southern Saudi Arabia. 1 Dorsal habitus 2 Facial view 3 Lateral habitus.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.